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通过声学协调重置神经调节逆转病理性增加的脑电图功率。

Reversing pathologically increased EEG power by acoustic coordinated reset neuromodulation.

作者信息

Adamchic Ilya, Toth Timea, Hauptmann Christian, Tass Peter Alexander

机构信息

Institute of Neuroscience and Medicine-Neuromodulation (INM-7), Jülich Research Center, Jülich, Germany.

出版信息

Hum Brain Mapp. 2014 May;35(5):2099-118. doi: 10.1002/hbm.22314. Epub 2013 Aug 1.

Abstract

Acoustic Coordinated Reset (CR) neuromodulation is a patterned stimulation with tones adjusted to the patient's dominant tinnitus frequency, which aims at desynchronizing pathological neuronal synchronization. In a recent proof-of-concept study, CR therapy, delivered 4-6 h/day more than 12 weeks, induced a significant clinical improvement along with a significant long-lasting decrease of pathological oscillatory power in the low frequency as well as γ band and an increase of the α power in a network of tinnitus-related brain areas. As yet, it remains unclear whether CR shifts the brain activity toward physiological levels or whether it induces clinically beneficial, but nonetheless abnormal electroencephalographic (EEG) patterns, for example excessively decreased δ and/or γ. Here, we compared the patients' spontaneous EEG data at baseline as well as after 12 weeks of CR therapy with the spontaneous EEG of healthy controls by means of Brain Electrical Source Analysis source montage and standardized low-resolution brain electromagnetic tomography techniques. The relationship between changes in EEG power and clinical scores was investigated using a partial least squares approach. In this way, we show that acoustic CR neuromodulation leads to a normalization of the oscillatory power in the tinnitus-related network of brain areas, most prominently in temporal regions. A positive association was found between the changes in tinnitus severity and the normalization of δ and γ power in the temporal, parietal, and cingulate cortical regions. Our findings demonstrate a widespread CR-induced normalization of EEG power, significantly associated with a reduction of tinnitus severity.

摘要

声学协调重置(CR)神经调节是一种模式化刺激,其音调根据患者的主要耳鸣频率进行调整,旨在使病理性神经元同步失同步。在最近一项概念验证研究中,每天进行4至6小时、持续超过12周的CR治疗,带来了显著的临床改善,同时低频以及γ频段的病理性振荡功率显著且持久地降低,耳鸣相关脑区网络中的α功率增加。然而,目前尚不清楚CR是将大脑活动转变为生理水平,还是诱导出临床上有益但仍异常的脑电图(EEG)模式,例如δ和/或γ过度降低。在此,我们通过脑电源分析源蒙太奇和标准化低分辨率脑电磁断层扫描技术,将患者基线时以及CR治疗12周后的自发EEG数据与健康对照者的自发EEG进行了比较。使用偏最小二乘法研究了EEG功率变化与临床评分之间的关系。通过这种方式,我们表明声学CR神经调节可使耳鸣相关脑区网络中的振荡功率正常化,在颞叶区域最为显著。在颞叶、顶叶和扣带回皮质区域,耳鸣严重程度的变化与δ和γ功率的正常化之间存在正相关。我们的研究结果表明,CR可广泛诱导EEG功率正常化,这与耳鸣严重程度的降低显著相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae79/6869306/ac1b79a3cc15/HBM-35-2099-g001.jpg

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